SK
Sanjeev Kumar
University of Delhi, Jawaharlal Nehru University School of Physical Sciences, Indira Gandhi National Open University School of Sciences
About
Synthesis, characterization, and tailoring of structural, functional, electronic and optical properties of graphene, transition metal dichalcogenides, hexagonal boron nitride and related hybrid functional materials through the surface and interface modifications by defect engineering for application as energy, catalyst, sensor and spin defect materials.
Employment
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University of Delhi Assistant Professor2024 - Present
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University of Delhi Assistant Professor2023 - 2024
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University of Delhi Assistant Professor2022 - 2023
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Jawaharlal Nehru University School of Physical Sciences Teaching Assistant2018 - 2019
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Jawaharlal Nehru University School of Physical Sciences Teaching Assistant2016 - 2017
Education
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Jawaharlal Nehru University School of Physical Sciences Doctor of Philosophy? - 2022
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Jawaharlal Nehru University School of Physical Sciences Master of Science? - 2014
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Indira Gandhi National Open University School of Sciences Bachelor of Science? - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- Advanced Fabrication Methods of 2D Materials Save
- Contributors Save
- Role of nanotechnology in microfluidic device-based smart sensors Save
- Tailoring surface electronic properties of GO-TiO2 hybrid nanostructures through interface modifications Save
- Tailoring functional properties of graphene oxide by defect-assisted surface and interface modifications Save
- Exploring the effect of varying regimes of ion fluence on the optical and surface electronic properties of graphene Save
- Substrate-assisted Fermi level shifting of CVD graphene by swift heavy ions Save
- Defect-induced strain-assisted surface electronic response of layered materials Save
- Probing interfacial charge transfer dynamics in MoS2/TiO2 nanocomposites using scanning Kelvin probe for improved photocatalytic response Save
- Modified optoelectronic behavior of MoS2/TiO2 hybrid nanostructures by thermal annealing Save